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JNTUK B.TECH EMWTL Sub Imp Questions

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JNTUK/JNTUGV Electromagnetic Waves and Transmission Lines - Important Exam Questions

UNIT I:

  • Define phase velocity and group velocity. Derive the relation between them.
  • What are the conditions for a line to be lossless and distortionless?
  • Explain the significance of primary and secondary constants of a transmission line.
  • Derive the expression for the propagation constant of a transmission line.
  • Draw and explain the T and π equivalent circuits of a transmission line.

UNIT II:

  • Explain the concept of VSWR. Derive its relation with reflection coefficient.
  • Using the Smith Chart, determine input impedance of a λ/4 line terminated with a load.
  • Draw the reflection coefficient curve for an open-circuited and short-circuited line.
  • Explain how UHF transmission lines act as circuit elements with practical examples.
  • Design a quarter wave transformer for matching a 100 Ω line to a 50 Ω load.
  • Explain stub matching and how it is implemented in practical lines.

UNIT III:

  • Explain the electric field due to a parallel plate capacitor. Derive capacitance per unit length.
  • State and derive Gauss Law. Apply it to calculate field due to a uniformly charged sphere.
  • State and derive Coulomb’s Law. How is it related to Gauss Law?
  • Define electric potential and derive its relation with electric field.
  • Write and explain Poisson’s and Laplace’s equations. Give one application of each.

UNIT IV:s

  • State and derive Biot-Savart Law. Use it to find magnetic field at center of circular loop.
  • State Amperé’s Circuital Law. Apply it to find magnetic field inside a long solenoid.
  • What is magnetic scalar potential? Compare it with vector potential.
  • Explain Faraday’s Law of electromagnetic induction with an example.
  • Why is Amperé’s Law inconsistent for time-varying fields? Explain displacement current.

UNIT V:

  • Derive wave propagation equations for lossy and lossless dielectrics.
  • Explain the behavior of uniform plane waves in free space.
  • What is the critical angle? Derive the condition for total internal reflection.
  • State and explain Poynting Theorem. Define and interpret the Poynting vector.
  • What is skin depth? Derive its expression for good conductors.
  • Explain the different types of polarization with examples.
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